Research Center for Nano-Biomaterials & Regenerative Medicine, Department of Biomedical Engineering, College of Biomedical Engineering, Taiyuan University of Technology, Taiyuan, P.R. China.
Shanxi-Zheda Institute of Advanced Materials and Chemical Engineering, Taiyuan, P.R. China.
J Biomater Sci Polym Ed. 2023 Dec;34(16):2217-2231. doi: 10.1080/09205063.2023.2230856. Epub 2023 Jul 4.
The subchondral bone is an important part of cartilage which contains a large amount of hydroxyapatite. The mineral components of subchondral bone is the key factor which determines the biomechanical strength, and then affects the biological function of articular cartilage. Here, a mineralized polyacrylamide (PAM-Mineralized) hydrogel with good ALP activity, cell adhesion and biocompatibility was fabricated for subchondral bone tissue engineering. The micromorphology, composition and mechanical properties of PAM and PAM-Mineralized hydrogels were studied. The PAM hydrogels showed a porous structure, while the PAM-Mineralized hydrogels had well-distributed layers of hydroxyapatite mineralization on the surface. The XRD results show that the characteristic peak of hydroxyapatite (HA) was measured in PAM-Mineralized, indicating that the main component of the mineralized structure formed on the surface of the hydrogel after mineralization is HA. The formation of HA ectively decreased the rate of equilibrium swelling of the PAM hydrogel, with PAM-M reaching swelling equilibrium at 6 h. Meanwhile, compressive strength of PAM-Mineralized hydrogel (moisture state) reached 290 ± 30 kPa, compressive modulus reached 130 ± 4 kPa. PAM-Mineralized hydrogels did not affect the growth and proliferation of MC3T3-E1 cells. Surface mineralization of PAM hydrogel could significantly improve osteogenic differentiation of MC3T3-E1 cells. These results showed that PAM-Mineralized hydrogel could possess potential application in the field of subchondral bone tissue engineering.
软骨下骨是软骨的重要组成部分,其中含有大量的羟基磷灰石。软骨下骨的矿物质成分是决定生物力学强度的关键因素,进而影响关节软骨的生物学功能。在这里,我们制备了一种具有良好碱性磷酸酶(ALP)活性、细胞黏附性和生物相容性的矿化聚丙烯酰胺(PAM-Mineralized)水凝胶,用于软骨下骨组织工程。研究了 PAM 和 PAM-Mineralized 水凝胶的微观形貌、组成和力学性能。PAM 水凝胶呈多孔结构,而 PAM-Mineralized 水凝胶表面则分布着均匀的羟基磷灰石矿化层。XRD 结果表明,在 PAM-Mineralized 中测量到了羟基磷灰石(HA)的特征峰,表明矿化后水凝胶表面形成的矿化结构的主要成分是 HA。HA 的形成有效地降低了 PAM 水凝胶的平衡溶胀率,PAM-M 在 6 h 达到溶胀平衡。同时,PAM-Mineralized 水凝胶(湿润状态)的压缩强度达到 290±30 kPa,压缩模量达到 130±4 kPa。PAM-Mineralized 水凝胶不影响 MC3T3-E1 细胞的生长和增殖。PAM 水凝胶表面矿化能显著促进 MC3T3-E1 细胞的成骨分化。这些结果表明,PAM-Mineralized 水凝胶在软骨下骨组织工程领域具有潜在的应用前景。